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视网膜中Ten-m3的过表达会改变沙袋鼠(尤金袋鼠,Macropus eugenii)同侧视网膜到丘脑的投射。

Overexpression of Ten-m3 in the retina alters ipsilateral retinocollicular projections in the wallaby (Macropus eugenii).

作者信息

Carr Owen P, Glendining Kelly A, Leamey Catherine A, Marotte Lauren R

机构信息

Biomedical Sciences and Biochemistry, Research School of Biology, Australian National University, Canberra, ACT 0200, Australia.

出版信息

Int J Dev Neurosci. 2013 Nov;31(7):496-504. doi: 10.1016/j.ijdevneu.2013.05.011. Epub 2013 Jun 6.

Abstract

Retinal projections to the superior colliculus are organised into retinotopic maps. Binocular vision requires that inputs from the two eyes map in register with each other. Studies in mice lacking Ten-m3, a homophilic transmembrane protein, indicate that it plays a key role in this process by influencing ipsilateral projections. The postnatal, ex utero development of the wallaby allows the targeted manipulation of molecules of interest during development. The distribution of mRNA for Ten-m3 in the retina and superior colliculus of the wallaby, and the effects of its spatiotemporally restricted retinal overexpression was investigated, in particular on the mapping of ipsilateral projections. Quantitative polymerase chain reaction found that Ten-m3 mRNA is expressed at relatively higher levels in the retina and colliculus early in development. Further, it is higher in ventral than dorsal retina, and increased in the retinotopically corresponding medial compared to lateral superior colliculus. In situ hybridisation demonstrated an increasing dorsoventral gradient in retinal ganglion cells was matched to an increasing lateromedial gradient in the superior colliculus. Overexpression of Ten-m3 by in vivo retinal electroporation produced an increase in ipsilateral projections to the binocular rostromedial colliculus, fitting with the proposal that Ten-m3 mediates mapping by attractant homophilic interactions. Retrograde labelling of the projection from this region suggested that overexpression produces a shift in the axons of existing ipsilaterally projecting ganglion cells rather than a rerouting of the axons of contralaterally projecting cells. Retinal manipulation of Ten-m3 levels produces changes in ipsilateral mapping, supporting a role for it in binocular mapping.

摘要

视网膜到上丘的投射被组织成视网膜拓扑图。双眼视觉要求来自两只眼睛的输入相互对齐映射。对缺乏Ten-m3(一种同源跨膜蛋白)的小鼠的研究表明,它通过影响同侧投射在这一过程中起关键作用。袋鼠的产后子宫外发育允许在发育过程中对感兴趣的分子进行靶向操作。研究了Ten-m3在袋鼠视网膜和上丘中的mRNA分布,以及其时空受限的视网膜过表达的影响,特别是对同侧投射映射的影响。定量聚合酶链反应发现,Ten-m3 mRNA在发育早期的视网膜和上丘中表达水平相对较高。此外,它在视网膜腹侧比背侧更高,并且在视网膜拓扑对应的上丘内侧比外侧增加。原位杂交表明,视网膜神经节细胞中背腹梯度的增加与上丘中外内侧梯度的增加相匹配。通过体内视网膜电穿孔过表达Ten-m3会导致向双眼吻内侧上丘的同侧投射增加,这与Ten-m3通过吸引性同源相互作用介导映射的提议相符。来自该区域的投射的逆行标记表明,过表达会导致现有同侧投射神经节细胞的轴突发生移位,而不是对侧投射细胞的轴突重新布线。对Ten-m3水平进行视网膜操作会导致同侧映射发生变化,支持其在双眼映射中的作用。

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